1 ///////////////////////////////////////////////////////////////////////////////
2 // Name: tests/strings/strings.cpp
3 // Purpose: wxString unit test
4 // Author: Vadim Zeitlin, Wlodzimierz ABX Skiba
6 // Copyright: (c) 2004 Vadim Zeitlin, Wlodzimierz Skiba
7 ///////////////////////////////////////////////////////////////////////////////
9 // ----------------------------------------------------------------------------
11 // ----------------------------------------------------------------------------
23 // ----------------------------------------------------------------------------
25 // ----------------------------------------------------------------------------
27 class StringTestCase
: public CppUnit::TestCase
33 CPPUNIT_TEST_SUITE( StringTestCase
);
34 CPPUNIT_TEST( String
);
35 CPPUNIT_TEST( PChar
);
36 CPPUNIT_TEST( Format
);
37 CPPUNIT_TEST( FormatUnicode
);
38 CPPUNIT_TEST( Constructors
);
39 CPPUNIT_TEST( StaticConstructors
);
40 CPPUNIT_TEST( Extraction
);
43 CPPUNIT_TEST( Replace
);
44 CPPUNIT_TEST( Match
);
45 CPPUNIT_TEST( CaseChanges
);
46 CPPUNIT_TEST( Compare
);
47 CPPUNIT_TEST( CompareNoCase
);
48 CPPUNIT_TEST( Contains
);
49 CPPUNIT_TEST( ToLong
);
50 CPPUNIT_TEST( ToULong
);
52 CPPUNIT_TEST( ToLongLong
);
53 CPPUNIT_TEST( ToULongLong
);
54 #endif // wxLongLong_t
55 CPPUNIT_TEST( ToDouble
);
56 CPPUNIT_TEST( FromDouble
);
57 CPPUNIT_TEST( StringBuf
);
58 CPPUNIT_TEST( UTF8Buf
);
59 CPPUNIT_TEST( CStrDataTernaryOperator
);
60 CPPUNIT_TEST( CStrDataOperators
);
61 CPPUNIT_TEST( CStrDataImplicitConversion
);
62 CPPUNIT_TEST( ExplicitConversion
);
63 CPPUNIT_TEST( IndexedAccess
);
64 CPPUNIT_TEST( BeforeAndAfter
);
65 CPPUNIT_TEST( ScopedBuffers
);
66 CPPUNIT_TEST_SUITE_END();
73 void StaticConstructors();
88 #endif // wxLongLong_t
93 void CStrDataTernaryOperator();
94 void DoCStrDataTernaryOperator(bool cond
);
95 void CStrDataOperators();
96 void CStrDataImplicitConversion();
97 void ExplicitConversion();
99 void BeforeAndAfter();
100 void ScopedBuffers();
102 DECLARE_NO_COPY_CLASS(StringTestCase
)
105 // register in the unnamed registry so that these tests are run by default
106 CPPUNIT_TEST_SUITE_REGISTRATION( StringTestCase
);
108 // also include in its own registry so that these tests can be run alone
109 CPPUNIT_TEST_SUITE_NAMED_REGISTRATION( StringTestCase
, "StringTestCase" );
111 StringTestCase::StringTestCase()
115 void StringTestCase::String()
123 for (int i
= 0; i
< 2; ++i
)
127 c
= wxT("! How'ya doin'?");
130 c
= wxT("Hello world! What's up?");
131 CPPUNIT_ASSERT( c
!= a
);
135 void StringTestCase::PChar()
141 for (int i
= 0; i
< 2; ++i
)
143 wxStrcpy (a
, wxT("Hello"));
144 wxStrcpy (b
, wxT(" world"));
145 wxStrcpy (c
, wxT("! How'ya doin'?"));
148 wxStrcpy (c
, wxT("Hello world! What's up?"));
149 CPPUNIT_ASSERT( wxStrcmp (c
, a
) != 0 );
153 void StringTestCase::Format()
156 s1
.Printf(wxT("%03d"), 18);
157 CPPUNIT_ASSERT( s1
== wxString::Format(wxT("%03d"), 18) );
158 s2
.Printf(wxT("Number 18: %s\n"), s1
.c_str());
159 CPPUNIT_ASSERT( s2
== wxString::Format(wxT("Number 18: %s\n"), s1
.c_str()) );
161 static const size_t lengths
[] = { 1, 512, 1024, 1025, 2048, 4096, 4097 };
162 for ( size_t n
= 0; n
< WXSIZEOF(lengths
); n
++ )
164 const size_t len
= lengths
[n
];
166 wxString
s(wxT('Z'), len
);
167 CPPUNIT_ASSERT_EQUAL( len
, wxString::Format(wxT("%s"), s
.c_str()).length());
174 wxString::Format(wxT("%2$s %1$s"), wxT("one"), wxT("two"))
178 void StringTestCase::FormatUnicode()
181 const char *UNICODE_STR
= "Iestat\xC4\xAB %i%i";
182 //const char *UNICODE_STR = "Iestat\xCC\x84 %i%i";
184 wxString fmt
= wxString::FromUTF8(UNICODE_STR
);
185 wxString s
= wxString::Format(fmt
, 1, 1);
186 wxString
expected(fmt
);
187 expected
.Replace("%i", "1");
188 CPPUNIT_ASSERT_EQUAL( expected
, s
);
189 #endif // wxUSE_UNICODE
192 void StringTestCase::Constructors()
194 CPPUNIT_ASSERT_EQUAL( "", wxString('Z', 0) );
195 CPPUNIT_ASSERT_EQUAL( "Z", wxString('Z') );
196 CPPUNIT_ASSERT_EQUAL( "ZZZZ", wxString('Z', 4) );
197 CPPUNIT_ASSERT_EQUAL( "Hell", wxString("Hello", 4) );
198 CPPUNIT_ASSERT_EQUAL( "Hello", wxString("Hello", 5) );
201 CPPUNIT_ASSERT_EQUAL( L
"", wxString(L
'Z', 0) );
202 CPPUNIT_ASSERT_EQUAL( L
"Z", wxString(L
'Z') );
203 CPPUNIT_ASSERT_EQUAL( L
"ZZZZ", wxString(L
'Z', 4) );
204 CPPUNIT_ASSERT_EQUAL( L
"Hell", wxString(L
"Hello", 4) );
205 CPPUNIT_ASSERT_EQUAL( L
"Hello", wxString(L
"Hello", 5) );
206 #endif // wxUSE_UNICODE
208 CPPUNIT_ASSERT_EQUAL( 0, wxString(wxString(), 17).length() );
210 #if wxUSE_UNICODE_UTF8
211 // This string has 3 characters (<h>, <e'> and <l>), not 4 when using UTF-8
213 if ( wxConvLibc
.IsUTF8() )
215 wxString
s3("h\xc3\xa9llo", 4);
216 CPPUNIT_ASSERT_EQUAL( 3, s3
.length() );
217 CPPUNIT_ASSERT_EQUAL( 'l', (char)s3
[2] );
219 #endif // wxUSE_UNICODE_UTF8
222 static const char *s
= "?really!";
223 const char *start
= wxStrchr(s
, 'r');
224 const char *end
= wxStrchr(s
, '!');
225 CPPUNIT_ASSERT_EQUAL( "really", wxString(start
, end
) );
227 // test if creating string from NULL C pointer works:
228 CPPUNIT_ASSERT_EQUAL( "", wxString((const char *)NULL
) );
231 void StringTestCase::StaticConstructors()
233 CPPUNIT_ASSERT_EQUAL( "", wxString::FromAscii("") );
234 CPPUNIT_ASSERT_EQUAL( "", wxString::FromAscii("Hello", 0) );
235 CPPUNIT_ASSERT_EQUAL( "Hell", wxString::FromAscii("Hello", 4) );
236 CPPUNIT_ASSERT_EQUAL( "Hello", wxString::FromAscii("Hello", 5) );
237 CPPUNIT_ASSERT_EQUAL( "Hello", wxString::FromAscii("Hello") );
239 // FIXME: this doesn't work currently but should!
240 //CPPUNIT_ASSERT_EQUAL( 1, wxString::FromAscii("", 1).length() );
243 CPPUNIT_ASSERT_EQUAL( "", wxString::FromUTF8("") );
244 CPPUNIT_ASSERT_EQUAL( "", wxString::FromUTF8("Hello", 0) );
245 CPPUNIT_ASSERT_EQUAL( "Hell", wxString::FromUTF8("Hello", 4) );
246 CPPUNIT_ASSERT_EQUAL( "Hello", wxString::FromUTF8("Hello", 5) );
247 CPPUNIT_ASSERT_EQUAL( "Hello", wxString::FromUTF8("Hello") );
249 CPPUNIT_ASSERT_EQUAL( 2, wxString::FromUTF8("h\xc3\xa9llo", 3).length() );
252 //CPPUNIT_ASSERT_EQUAL( 1, wxString::FromUTF8("", 1).length() );
255 void StringTestCase::Extraction()
257 wxString
s(wxT("Hello, world!"));
259 CPPUNIT_ASSERT( wxStrcmp( s
.c_str() , wxT("Hello, world!") ) == 0 );
260 CPPUNIT_ASSERT( wxStrcmp( s
.Left(5).c_str() , wxT("Hello") ) == 0 );
261 CPPUNIT_ASSERT( wxStrcmp( s
.Right(6).c_str() , wxT("world!") ) == 0 );
262 CPPUNIT_ASSERT( wxStrcmp( s(3, 5).c_str() , wxT("lo, w") ) == 0 );
263 CPPUNIT_ASSERT( wxStrcmp( s
.Mid(3).c_str() , wxT("lo, world!") ) == 0 );
264 CPPUNIT_ASSERT( wxStrcmp( s
.substr(3, 5).c_str() , wxT("lo, w") ) == 0 );
265 CPPUNIT_ASSERT( wxStrcmp( s
.substr(3).c_str() , wxT("lo, world!") ) == 0 );
268 static const char *germanUTF8
= "Oberfl\303\244che";
269 wxString
strUnicode(wxString::FromUTF8(germanUTF8
));
271 CPPUNIT_ASSERT( strUnicode
.Mid(0, 10) == strUnicode
);
272 CPPUNIT_ASSERT( strUnicode
.Mid(7, 2) == "ch" );
273 #endif // wxUSE_UNICODE
277 #define TEST_STARTS_WITH(prefix, correct_rest, result) \
278 CPPUNIT_ASSERT_EQUAL(result, s.StartsWith(prefix, &rest)); \
280 CPPUNIT_ASSERT_EQUAL(correct_rest, rest)
282 TEST_STARTS_WITH( wxT("Hello"), wxT(", world!"), true );
283 TEST_STARTS_WITH( wxT("Hello, "), wxT("world!"), true );
284 TEST_STARTS_WITH( wxT("Hello, world!"), wxT(""), true );
285 TEST_STARTS_WITH( wxT("Hello, world!!!"), wxT(""), false );
286 TEST_STARTS_WITH( wxT(""), wxT("Hello, world!"), true );
287 TEST_STARTS_WITH( wxT("Goodbye"), wxT(""), false );
288 TEST_STARTS_WITH( wxT("Hi"), wxT(""), false );
290 #undef TEST_STARTS_WITH
292 rest
= "Hello world";
293 CPPUNIT_ASSERT( rest
.StartsWith("Hello ", &rest
) );
294 CPPUNIT_ASSERT_EQUAL("world", rest
);
296 #define TEST_ENDS_WITH(suffix, correct_rest, result) \
297 CPPUNIT_ASSERT_EQUAL(result, s.EndsWith(suffix, &rest)); \
299 CPPUNIT_ASSERT_EQUAL(correct_rest, rest)
301 TEST_ENDS_WITH( wxT(""), wxT("Hello, world!"), true );
302 TEST_ENDS_WITH( wxT("!"), wxT("Hello, world"), true );
303 TEST_ENDS_WITH( wxT(", world!"), wxT("Hello"), true );
304 TEST_ENDS_WITH( wxT("ello, world!"), wxT("H"), true );
305 TEST_ENDS_WITH( wxT("Hello, world!"), wxT(""), true );
306 TEST_ENDS_WITH( wxT("very long string"), wxT(""), false );
307 TEST_ENDS_WITH( wxT("?"), wxT(""), false );
308 TEST_ENDS_WITH( wxT("Hello, world"), wxT(""), false );
309 TEST_ENDS_WITH( wxT("Gello, world!"), wxT(""), false );
311 #undef TEST_ENDS_WITH
314 void StringTestCase::Trim()
316 #define TEST_TRIM( str , dir , result ) \
317 CPPUNIT_ASSERT( wxString(str).Trim(dir) == result )
319 TEST_TRIM( wxT(" Test "), true, wxT(" Test") );
320 TEST_TRIM( wxT(" "), true, wxT("") );
321 TEST_TRIM( wxT(" "), true, wxT("") );
322 TEST_TRIM( wxT(""), true, wxT("") );
324 TEST_TRIM( wxT(" Test "), false, wxT("Test ") );
325 TEST_TRIM( wxT(" "), false, wxT("") );
326 TEST_TRIM( wxT(" "), false, wxT("") );
327 TEST_TRIM( wxT(""), false, wxT("") );
332 void StringTestCase::Find()
334 #define TEST_FIND( str , start , result ) \
335 CPPUNIT_ASSERT( wxString(str).find(wxT("ell"), start) == result );
337 TEST_FIND( wxT("Well, hello world"), 0, 1 );
338 TEST_FIND( wxT("Well, hello world"), 6, 7 );
339 TEST_FIND( wxT("Well, hello world"), 9, wxString::npos
);
344 void StringTestCase::Replace()
346 #define TEST_REPLACE( original , pos , len , replacement , result ) \
348 wxString s = original; \
349 s.replace( pos , len , replacement ); \
350 CPPUNIT_ASSERT_EQUAL( result, s ); \
353 TEST_REPLACE( wxT("012-AWORD-XYZ"), 4, 5, wxT("BWORD"), wxT("012-BWORD-XYZ") );
354 TEST_REPLACE( wxT("increase"), 0, 2, wxT("de"), wxT("decrease") );
355 TEST_REPLACE( wxT("wxWindow"), 8, 0, wxT("s"), wxT("wxWindows") );
356 TEST_REPLACE( wxT("foobar"), 3, 0, wxT("-"), wxT("foo-bar") );
357 TEST_REPLACE( wxT("barfoo"), 0, 6, wxT("foobar"), wxT("foobar") );
360 #define TEST_NULLCHARREPLACE( o , olen, pos , len , replacement , r, rlen ) \
362 wxString s(o,olen); \
363 s.replace( pos , len , replacement ); \
364 CPPUNIT_ASSERT_EQUAL( wxString(r,rlen), s ); \
367 TEST_NULLCHARREPLACE( wxT("null\0char"), 9, 5, 1, wxT("d"),
368 wxT("null\0dhar"), 9 );
370 #define TEST_WXREPLACE( o , olen, olds, news, all, r, rlen ) \
372 wxString s(o,olen); \
373 s.Replace( olds, news, all ); \
374 CPPUNIT_ASSERT_EQUAL( wxString(r,rlen), s ); \
377 TEST_WXREPLACE( wxT("null\0char"), 9, wxT("c"), wxT("de"), true,
378 wxT("null\0dehar"), 10 );
380 TEST_WXREPLACE( wxT("null\0dehar"), 10, wxT("de"), wxT("c"), true,
381 wxT("null\0char"), 9 );
383 TEST_WXREPLACE( "life", 4, "f", "", false, "lie", 3 );
384 TEST_WXREPLACE( "life", 4, "f", "", true, "lie", 3 );
385 TEST_WXREPLACE( "life", 4, "fe", "ve", true, "live", 4 );
386 TEST_WXREPLACE( "xx", 2, "x", "yy", true, "yyyy", 4 );
387 TEST_WXREPLACE( "xxx", 3, "xx", "z", true, "zx", 2 );
389 #undef TEST_WXREPLACE
390 #undef TEST_NULLCHARREPLACE
394 void StringTestCase::Match()
396 #define TEST_MATCH( s1 , s2 , result ) \
397 CPPUNIT_ASSERT( wxString(s1).Matches(s2) == result )
399 TEST_MATCH( "foobar", "foo*", true );
400 TEST_MATCH( "foobar", "*oo*", true );
401 TEST_MATCH( "foobar", "*bar", true );
402 TEST_MATCH( "foobar", "??????", true );
403 TEST_MATCH( "foobar", "f??b*", true );
404 TEST_MATCH( "foobar", "f?b*", false );
405 TEST_MATCH( "foobar", "*goo*", false );
406 TEST_MATCH( "foobar", "*foo", false );
407 TEST_MATCH( "foobarfoo", "*foo", true );
408 TEST_MATCH( "", "*", true );
409 TEST_MATCH( "", "?", false );
415 void StringTestCase::CaseChanges()
417 wxString
s1(wxT("Hello!"));
423 CPPUNIT_ASSERT_EQUAL( wxT("HELLO!"), s1u
);
424 CPPUNIT_ASSERT_EQUAL( wxT("hello!"), s1l
);
430 CPPUNIT_ASSERT_EQUAL( "", s2u
);
431 CPPUNIT_ASSERT_EQUAL( "", s2l
);
434 wxString
s3("good bye");
435 CPPUNIT_ASSERT_EQUAL( "Good bye", s3
.Capitalize() );
436 s3
.MakeCapitalized();
437 CPPUNIT_ASSERT_EQUAL( "Good bye", s3
);
439 CPPUNIT_ASSERT_EQUAL( "Abc", wxString("ABC").Capitalize() );
441 CPPUNIT_ASSERT_EQUAL( "", wxString().Capitalize() );
444 void StringTestCase::Compare()
446 wxString s1
= wxT("AHH");
447 wxString eq
= wxT("AHH");
448 wxString neq1
= wxT("HAH");
449 wxString neq2
= wxT("AH");
450 wxString neq3
= wxT("AHHH");
451 wxString neq4
= wxT("AhH");
453 CPPUNIT_ASSERT( s1
== eq
);
454 CPPUNIT_ASSERT( s1
!= neq1
);
455 CPPUNIT_ASSERT( s1
!= neq2
);
456 CPPUNIT_ASSERT( s1
!= neq3
);
457 CPPUNIT_ASSERT( s1
!= neq4
);
459 CPPUNIT_ASSERT( s1
== wxT("AHH") );
460 CPPUNIT_ASSERT( s1
!= wxT("no") );
461 CPPUNIT_ASSERT( s1
< wxT("AZ") );
462 CPPUNIT_ASSERT( s1
<= wxT("AZ") );
463 CPPUNIT_ASSERT( s1
<= wxT("AHH") );
464 CPPUNIT_ASSERT( s1
> wxT("AA") );
465 CPPUNIT_ASSERT( s1
>= wxT("AA") );
466 CPPUNIT_ASSERT( s1
>= wxT("AHH") );
468 // test comparison with C strings in Unicode build (must work in ANSI as
470 CPPUNIT_ASSERT( s1
== "AHH" );
471 CPPUNIT_ASSERT( s1
!= "no" );
472 CPPUNIT_ASSERT( s1
< "AZ" );
473 CPPUNIT_ASSERT( s1
<= "AZ" );
474 CPPUNIT_ASSERT( s1
<= "AHH" );
475 CPPUNIT_ASSERT( s1
> "AA" );
476 CPPUNIT_ASSERT( s1
>= "AA" );
477 CPPUNIT_ASSERT( s1
>= "AHH" );
479 // wxString _s1 = wxT("A\0HH");
480 // wxString _eq = wxT("A\0HH");
481 // wxString _neq1 = wxT("H\0AH");
482 // wxString _neq2 = wxT("A\0H");
483 // wxString _neq3 = wxT("A\0HHH");
484 // wxString _neq4 = wxT("A\0hH");
487 neq1
.insert(1,1,'\0');
488 neq2
.insert(1,1,'\0');
489 neq3
.insert(1,1,'\0');
490 neq4
.insert(1,1,'\0');
492 CPPUNIT_ASSERT( s1
== eq
);
493 CPPUNIT_ASSERT( s1
!= neq1
);
494 CPPUNIT_ASSERT( s1
!= neq2
);
495 CPPUNIT_ASSERT( s1
!= neq3
);
496 CPPUNIT_ASSERT( s1
!= neq4
);
498 CPPUNIT_ASSERT( wxString("\n").Cmp(" ") < 0 );
499 CPPUNIT_ASSERT( wxString("'").Cmp("!") > 0 );
500 CPPUNIT_ASSERT( wxString("!").Cmp("z") < 0 );
503 void StringTestCase::CompareNoCase()
505 wxString s1
= wxT("AHH");
506 wxString eq
= wxT("AHH");
507 wxString eq2
= wxT("AhH");
508 wxString eq3
= wxT("ahh");
509 wxString neq
= wxT("HAH");
510 wxString neq2
= wxT("AH");
511 wxString neq3
= wxT("AHHH");
513 #define CPPUNIT_CNCEQ_ASSERT(s1, s2) CPPUNIT_ASSERT( s1.CmpNoCase(s2) == 0)
514 #define CPPUNIT_CNCNEQ_ASSERT(s1, s2) CPPUNIT_ASSERT( s1.CmpNoCase(s2) != 0)
516 CPPUNIT_CNCEQ_ASSERT( s1
, eq
);
517 CPPUNIT_CNCEQ_ASSERT( s1
, eq2
);
518 CPPUNIT_CNCEQ_ASSERT( s1
, eq3
);
520 CPPUNIT_CNCNEQ_ASSERT( s1
, neq
);
521 CPPUNIT_CNCNEQ_ASSERT( s1
, neq2
);
522 CPPUNIT_CNCNEQ_ASSERT( s1
, neq3
);
525 // wxString _s1 = wxT("A\0HH");
526 // wxString _eq = wxT("A\0HH");
527 // wxString _eq2 = wxT("A\0hH");
528 // wxString _eq3 = wxT("a\0hh");
529 // wxString _neq = wxT("H\0AH");
530 // wxString _neq2 = wxT("A\0H");
531 // wxString _neq3 = wxT("A\0HHH");
535 eq2
.insert(1,1,'\0');
536 eq3
.insert(1,1,'\0');
537 neq
.insert(1,1,'\0');
538 neq2
.insert(1,1,'\0');
539 neq3
.insert(1,1,'\0');
541 CPPUNIT_CNCEQ_ASSERT( s1
, eq
);
542 CPPUNIT_CNCEQ_ASSERT( s1
, eq2
);
543 CPPUNIT_CNCEQ_ASSERT( s1
, eq3
);
545 CPPUNIT_CNCNEQ_ASSERT( s1
, neq
);
546 CPPUNIT_CNCNEQ_ASSERT( s1
, neq2
);
547 CPPUNIT_CNCNEQ_ASSERT( s1
, neq3
);
549 CPPUNIT_ASSERT( wxString("\n").CmpNoCase(" ") < 0 );
550 CPPUNIT_ASSERT( wxString("'").CmpNoCase("!") > 0);
551 CPPUNIT_ASSERT( wxString("!").Cmp("Z") < 0 );
554 void StringTestCase::Contains()
556 static const struct ContainsData
559 const wxChar
*needle
;
563 { wxT(""), wxT(""), true },
564 { wxT(""), wxT("foo"), false },
565 { wxT("foo"), wxT(""), true },
566 { wxT("foo"), wxT("f"), true },
567 { wxT("foo"), wxT("o"), true },
568 { wxT("foo"), wxT("oo"), true },
569 { wxT("foo"), wxT("ooo"), false },
570 { wxT("foo"), wxT("oooo"), false },
571 { wxT("foo"), wxT("fooo"), false },
574 for ( size_t n
= 0; n
< WXSIZEOF(containsData
); n
++ )
576 const ContainsData
& cd
= containsData
[n
];
577 CPPUNIT_ASSERT_EQUAL( cd
.contains
, wxString(cd
.hay
).Contains(cd
.needle
) );
581 // flags used in ToLongData.flags
586 Number_Unsigned
= 2, // if not specified, works for signed conversion
587 Number_Signed
= 4, // if not specified, works for unsigned
588 Number_LongLong
= 8, // only for long long tests
589 Number_Long
= 16 // only for long tests
592 static const struct ToLongData
599 #endif // wxLongLong_t
603 long LValue() const { return value
; }
604 unsigned long ULValue() const { return value
; }
606 wxLongLong_t
LLValue() const { return value
; }
607 wxULongLong_t
ULLValue() const { return (wxULongLong_t
)value
; }
608 #endif // wxLongLong_t
610 bool IsOk() const { return !(flags
& Number_Invalid
); }
613 { wxT("1"), 1, Number_Ok
},
614 { wxT("0"), 0, Number_Ok
},
615 { wxT("a"), 0, Number_Invalid
},
616 { wxT("12345"), 12345, Number_Ok
},
617 { wxT("--1"), 0, Number_Invalid
},
619 { wxT("-1"), -1, Number_Signed
| Number_Long
},
620 // this is surprising but consistent with strtoul() behaviour
621 { wxT("-1"), ULONG_MAX
, Number_Unsigned
| Number_Long
},
623 // this must overflow, even with 64 bit long
624 { wxT("922337203685477580711"), 0, Number_Invalid
},
627 { wxT("2147483648"), wxLL(2147483648), Number_LongLong
},
628 { wxT("-2147483648"), wxLL(-2147483648), Number_LongLong
| Number_Signed
},
629 { wxT("9223372036854775808"), wxULL(9223372036854775808), Number_LongLong
|
631 #endif // wxLongLong_t
634 { wxT("010"), 10, Number_Ok
, 10 },
635 { wxT("010"), 8, Number_Ok
, 0 },
636 { wxT("010"), 8, Number_Ok
, 8 },
637 { wxT("010"), 16, Number_Ok
, 16 },
639 { wxT("0010"), 10, Number_Ok
, 10 },
640 { wxT("0010"), 8, Number_Ok
, 0 },
641 { wxT("0010"), 8, Number_Ok
, 8 },
642 { wxT("0010"), 16, Number_Ok
, 16 },
644 { wxT("0x11"), 0, Number_Invalid
, 10 },
645 { wxT("0x11"), 17, Number_Ok
, 0 },
646 { wxT("0x11"), 0, Number_Invalid
, 8 },
647 { wxT("0x11"), 17, Number_Ok
, 16 },
650 void StringTestCase::ToLong()
653 for ( size_t n
= 0; n
< WXSIZEOF(longData
); n
++ )
655 const ToLongData
& ld
= longData
[n
];
657 if ( ld
.flags
& (Number_LongLong
| Number_Unsigned
) )
660 // NOTE: unless you're using some exotic locale, ToCLong and ToLong
661 // should behave the same for our test data set:
663 CPPUNIT_ASSERT_EQUAL( ld
.IsOk(),
664 wxString(ld
.str
).ToCLong(&l
, ld
.base
) );
666 CPPUNIT_ASSERT_EQUAL( ld
.LValue(), l
);
668 CPPUNIT_ASSERT_EQUAL( ld
.IsOk(),
669 wxString(ld
.str
).ToLong(&l
, ld
.base
) );
671 CPPUNIT_ASSERT_EQUAL( ld
.LValue(), l
);
674 // special case: check that the output is not modified if the parsing
677 CPPUNIT_ASSERT( !wxString("foo").ToLong(&l
) );
678 CPPUNIT_ASSERT_EQUAL( 17, l
);
680 // also check that it is modified if we did parse something successfully in
681 // the beginning of the string
682 CPPUNIT_ASSERT( !wxString("9 cats").ToLong(&l
) );
683 CPPUNIT_ASSERT_EQUAL( 9, l
);
686 void StringTestCase::ToULong()
689 for ( size_t n
= 0; n
< WXSIZEOF(longData
); n
++ )
691 const ToLongData
& ld
= longData
[n
];
693 if ( ld
.flags
& (Number_LongLong
| Number_Signed
) )
696 // NOTE: unless you're using some exotic locale, ToCLong and ToLong
697 // should behave the same for our test data set:
699 CPPUNIT_ASSERT_EQUAL( ld
.IsOk(),
700 wxString(ld
.str
).ToCULong(&ul
, ld
.base
) );
702 CPPUNIT_ASSERT_EQUAL( ld
.ULValue(), ul
);
704 CPPUNIT_ASSERT_EQUAL( ld
.IsOk(),
705 wxString(ld
.str
).ToULong(&ul
, ld
.base
) );
707 CPPUNIT_ASSERT_EQUAL( ld
.ULValue(), ul
);
713 void StringTestCase::ToLongLong()
716 for ( size_t n
= 0; n
< WXSIZEOF(longData
); n
++ )
718 const ToLongData
& ld
= longData
[n
];
720 if ( ld
.flags
& (Number_Long
| Number_Unsigned
) )
723 CPPUNIT_ASSERT_EQUAL( ld
.IsOk(),
724 wxString(ld
.str
).ToLongLong(&l
, ld
.base
) );
726 CPPUNIT_ASSERT_EQUAL( ld
.LLValue(), l
);
730 void StringTestCase::ToULongLong()
733 for ( size_t n
= 0; n
< WXSIZEOF(longData
); n
++ )
735 const ToLongData
& ld
= longData
[n
];
737 if ( ld
.flags
& (Number_Long
| Number_Signed
) )
740 CPPUNIT_ASSERT_EQUAL( ld
.IsOk(),
741 wxString(ld
.str
).ToULongLong(&ul
, ld
.base
) );
743 CPPUNIT_ASSERT_EQUAL( ld
.ULLValue(), ul
);
747 #endif // wxLongLong_t
749 void StringTestCase::ToDouble()
752 static const struct ToDoubleData
759 { wxT("1"), 1, true },
760 { wxT("1.23"), 1.23, true },
761 { wxT(".1"), .1, true },
762 { wxT("1."), 1, true },
763 { wxT("1.."), 0, false },
764 { wxT("0"), 0, true },
765 { wxT("a"), 0, false },
766 { wxT("12345"), 12345, true },
767 { wxT("-1"), -1, true },
768 { wxT("--1"), 0, false },
769 { wxT("-3E-5"), -3E-5, true },
770 { wxT("-3E-abcde5"), 0, false },
773 // test ToCDouble() first:
776 for ( n
= 0; n
< WXSIZEOF(doubleData
); n
++ )
778 const ToDoubleData
& ld
= doubleData
[n
];
779 CPPUNIT_ASSERT_EQUAL( ld
.ok
, wxString(ld
.str
).ToCDouble(&d
) );
781 CPPUNIT_ASSERT_EQUAL( ld
.value
, d
);
785 // test ToDouble() now:
786 // NOTE: for the test to be reliable, we need to set the locale explicitly
787 // so that we know the decimal point character to use
789 if (!wxLocale::IsAvailable(wxLANGUAGE_FRENCH
))
790 return; // you should have french support installed to continue this test!
794 // don't load default catalog, it may be unavailable:
795 CPPUNIT_ASSERT( locale
.Init(wxLANGUAGE_FRENCH
, wxLOCALE_DONT_LOAD_DEFAULT
) );
797 static const struct ToDoubleData doubleData2
[] =
799 { wxT("1"), 1, true },
800 { wxT("1,23"), 1.23, true },
801 { wxT(",1"), .1, true },
802 { wxT("1,"), 1, true },
803 { wxT("1,,"), 0, false },
804 { wxT("0"), 0, true },
805 { wxT("a"), 0, false },
806 { wxT("12345"), 12345, true },
807 { wxT("-1"), -1, true },
808 { wxT("--1"), 0, false },
809 { wxT("-3E-5"), -3E-5, true },
810 { wxT("-3E-abcde5"), 0, false },
813 for ( n
= 0; n
< WXSIZEOF(doubleData2
); n
++ )
815 const ToDoubleData
& ld
= doubleData2
[n
];
816 CPPUNIT_ASSERT_EQUAL( ld
.ok
, wxString(ld
.str
).ToDouble(&d
) );
818 CPPUNIT_ASSERT_EQUAL( ld
.value
, d
);
822 void StringTestCase::FromDouble()
824 static const struct FromDoubleTestData
831 { 1.23, -1, "1.23" },
832 // NB: there are no standards about the minimum exponent width
833 // and newer MSVC versions use 3 digits as minimum exponent
834 // width while GNU libc uses 2 digits as minimum width...
835 #ifdef wxUSING_VC_CRT_IO
836 { -3e-10, -1, "-3e-010" },
838 { -3e-10, -1, "-3e-10" },
840 { -0.45678, -1, "-0.45678" },
841 { 1.2345678, 0, "1" },
842 { 1.2345678, 1, "1.2" },
843 { 1.2345678, 2, "1.23" },
844 { 1.2345678, 3, "1.235" },
847 for ( unsigned n
= 0; n
< WXSIZEOF(testData
); n
++ )
849 const FromDoubleTestData
& td
= testData
[n
];
850 CPPUNIT_ASSERT_EQUAL( td
.str
, wxString::FromCDouble(td
.value
, td
.prec
) );
853 if ( !wxLocale::IsAvailable(wxLANGUAGE_FRENCH
) )
857 CPPUNIT_ASSERT( locale
.Init(wxLANGUAGE_FRENCH
, wxLOCALE_DONT_LOAD_DEFAULT
) );
859 for ( unsigned m
= 0; m
< WXSIZEOF(testData
); m
++ )
861 const FromDoubleTestData
& td
= testData
[m
];
863 wxString
str(td
.str
);
864 str
.Replace(".", ",");
865 CPPUNIT_ASSERT_EQUAL( str
, wxString::FromDouble(td
.value
, td
.prec
) );
869 void StringTestCase::StringBuf()
871 // check that buffer can be used to write into the string
873 wxStrcpy(wxStringBuffer(s
, 10), wxT("foo"));
875 CPPUNIT_ASSERT_EQUAL(3, s
.length());
876 CPPUNIT_ASSERT(wxT('f') == s
[0u]);
877 CPPUNIT_ASSERT(wxT('o') == s
[1]);
878 CPPUNIT_ASSERT(wxT('o') == s
[2]);
881 // also check that the buffer initially contains the original string
883 wxStringBuffer
buf(s
, 10);
884 CPPUNIT_ASSERT_EQUAL( wxT('f'), buf
[0] );
885 CPPUNIT_ASSERT_EQUAL( wxT('o'), buf
[1] );
886 CPPUNIT_ASSERT_EQUAL( wxT('o'), buf
[2] );
887 CPPUNIT_ASSERT_EQUAL( wxT('\0'), buf
[3] );
891 wxStringBufferLength
buf(s
, 10);
892 CPPUNIT_ASSERT_EQUAL( wxT('f'), buf
[0] );
893 CPPUNIT_ASSERT_EQUAL( wxT('o'), buf
[1] );
894 CPPUNIT_ASSERT_EQUAL( wxT('o'), buf
[2] );
895 CPPUNIT_ASSERT_EQUAL( wxT('\0'), buf
[3] );
897 // and check that it can be used to write only the specified number of
898 // characters to the string
899 wxStrcpy(buf
, wxT("barrbaz"));
903 CPPUNIT_ASSERT_EQUAL(4, s
.length());
904 CPPUNIT_ASSERT(wxT('b') == s
[0u]);
905 CPPUNIT_ASSERT(wxT('a') == s
[1]);
906 CPPUNIT_ASSERT(wxT('r') == s
[2]);
907 CPPUNIT_ASSERT(wxT('r') == s
[3]);
909 // check that creating buffer of length smaller than string works, i.e. at
910 // least doesn't crash (it would if we naively copied the entire original
911 // string contents in the buffer)
912 *wxStringBuffer(s
, 1) = '!';
915 void StringTestCase::UTF8Buf()
918 // "czech" in Czech ("cestina"):
919 static const char *textUTF8
= "\304\215e\305\241tina";
920 static const wchar_t textUTF16
[] = {0x10D, 0x65, 0x161, 0x74, 0x69, 0x6E, 0x61, 0};
923 wxStrcpy(wxUTF8StringBuffer(s
, 9), textUTF8
);
924 CPPUNIT_ASSERT(s
== textUTF16
);
927 wxUTF8StringBufferLength
buf(s
, 20);
928 wxStrcpy(buf
, textUTF8
);
931 CPPUNIT_ASSERT(s
== wxString(textUTF16
, 0, 3));
932 #endif // wxUSE_UNICODE
937 void StringTestCase::CStrDataTernaryOperator()
939 DoCStrDataTernaryOperator(true);
940 DoCStrDataTernaryOperator(false);
943 template<typename T
> bool CheckStr(const wxString
& expected
, T s
)
945 return expected
== wxString(s
);
948 void StringTestCase::DoCStrDataTernaryOperator(bool cond
)
950 // test compilation of wxCStrData when used with operator?: (the asserts
951 // are not very important, we're testing if the code compiles at all):
955 const wchar_t *wcStr
= L
"foo";
956 CPPUNIT_ASSERT( CheckStr(s
, (cond
? s
.c_str() : wcStr
)) );
957 CPPUNIT_ASSERT( CheckStr(s
, (cond
? s
.c_str() : L
"foo")) );
958 CPPUNIT_ASSERT( CheckStr(s
, (cond
? wcStr
: s
.c_str())) );
959 CPPUNIT_ASSERT( CheckStr(s
, (cond
? L
"foo" : s
.c_str())) );
961 const char *mbStr
= "foo";
962 CPPUNIT_ASSERT( CheckStr(s
, (cond
? s
.c_str() : mbStr
)) );
963 CPPUNIT_ASSERT( CheckStr(s
, (cond
? s
.c_str() : "foo")) );
964 CPPUNIT_ASSERT( CheckStr(s
, (cond
? mbStr
: s
.c_str())) );
965 CPPUNIT_ASSERT( CheckStr(s
, (cond
? "foo" : s
.c_str())) );
968 CPPUNIT_ASSERT( CheckStr(empty
, (cond
? empty
.c_str() : wxEmptyString
)) );
969 CPPUNIT_ASSERT( CheckStr(empty
, (cond
? wxEmptyString
: empty
.c_str())) );
972 void StringTestCase::CStrDataOperators()
976 CPPUNIT_ASSERT( s
.c_str()[0] == 'h' );
977 CPPUNIT_ASSERT( s
.c_str()[1] == 'e' );
979 // IMPORTANT: at least with the CRT coming with MSVC++ 2008 trying to access
980 // the final character results in an assert failure (with debug CRT)
981 //CPPUNIT_ASSERT( s.c_str()[5] == '\0' );
983 CPPUNIT_ASSERT( *s
.c_str() == 'h' );
984 CPPUNIT_ASSERT( *(s
.c_str() + 2) == 'l' );
985 //CPPUNIT_ASSERT( *(s.c_str() + 5) == '\0' );
988 bool CheckStrChar(const wxString
& expected
, char *s
)
989 { return CheckStr(expected
, s
); }
990 bool CheckStrWChar(const wxString
& expected
, wchar_t *s
)
991 { return CheckStr(expected
, s
); }
992 bool CheckStrConstChar(const wxString
& expected
, const char *s
)
993 { return CheckStr(expected
, s
); }
994 bool CheckStrConstWChar(const wxString
& expected
, const wchar_t *s
)
995 { return CheckStr(expected
, s
); }
997 void StringTestCase::CStrDataImplicitConversion()
1001 CPPUNIT_ASSERT( CheckStrConstWChar(s
, s
.c_str()) );
1002 CPPUNIT_ASSERT( CheckStrConstChar(s
, s
.c_str()) );
1004 // implicit conversion of wxString is not available in STL build
1006 CPPUNIT_ASSERT( CheckStrConstWChar(s
, s
) );
1007 CPPUNIT_ASSERT( CheckStrConstChar(s
, s
) );
1011 void StringTestCase::ExplicitConversion()
1015 CPPUNIT_ASSERT( CheckStr(s
, s
.mb_str()) );
1016 CPPUNIT_ASSERT( CheckStrConstChar(s
, s
.mb_str()) );
1017 CPPUNIT_ASSERT( CheckStrChar(s
, s
.char_str()) );
1019 CPPUNIT_ASSERT( CheckStr(s
, s
.wc_str()) );
1020 CPPUNIT_ASSERT( CheckStrConstWChar(s
, s
.wc_str()) );
1021 CPPUNIT_ASSERT( CheckStrWChar(s
, s
.wchar_str()) );
1024 void StringTestCase::IndexedAccess()
1027 CPPUNIT_ASSERT_EQUAL( 'r', (char)s
[2] );
1029 // this tests for a possible bug in UTF-8 based wxString implementation:
1030 // the 3rd character of the underlying byte string is going to change, but
1031 // the 3rd character of wxString should remain the same
1033 CPPUNIT_ASSERT_EQUAL( 'r', (char)s
[2] );
1036 void StringTestCase::BeforeAndAfter()
1038 // Construct a string with 2 equal signs in it by concatenating its three
1039 // parts: before the first "=", in between the two "="s and after the last
1040 // one. This allows to avoid duplicating the string contents (which has to
1041 // be different for Unicode and ANSI builds) in the tests below.
1043 #define FIRST_PART L"letter"
1044 #define MIDDLE_PART L"\xe9;\xe7a"
1045 #define LAST_PART L"l\xe0"
1046 #else // !wxUSE_UNICODE
1047 #define FIRST_PART "letter"
1048 #define MIDDLE_PART "e;ca"
1049 #define LAST_PART "la"
1050 #endif // wxUSE_UNICODE/!wxUSE_UNICODE
1052 const wxString
s(FIRST_PART
wxT("=") MIDDLE_PART
wxT("=") LAST_PART
);
1056 CPPUNIT_ASSERT_EQUAL( FIRST_PART
, s
.BeforeFirst('=', &r
) );
1057 CPPUNIT_ASSERT_EQUAL( MIDDLE_PART
wxT("=") LAST_PART
, r
);
1059 CPPUNIT_ASSERT_EQUAL( s
, s
.BeforeFirst('!', &r
) );
1060 CPPUNIT_ASSERT_EQUAL( "", r
);
1063 CPPUNIT_ASSERT_EQUAL( FIRST_PART
wxT("=") MIDDLE_PART
, s
.BeforeLast('=', &r
) );
1064 CPPUNIT_ASSERT_EQUAL( LAST_PART
, r
);
1066 CPPUNIT_ASSERT_EQUAL( "", s
.BeforeLast('!', &r
) );
1067 CPPUNIT_ASSERT_EQUAL( s
, r
);
1070 CPPUNIT_ASSERT_EQUAL( MIDDLE_PART
wxT("=") LAST_PART
, s
.AfterFirst('=') );
1071 CPPUNIT_ASSERT_EQUAL( "", s
.AfterFirst('!') );
1074 CPPUNIT_ASSERT_EQUAL( LAST_PART
, s
.AfterLast('=') );
1075 CPPUNIT_ASSERT_EQUAL( s
, s
.AfterLast('!') );
1082 void StringTestCase::ScopedBuffers()
1084 // wxString relies on efficient buffers, verify they work as they should
1086 const char *literal
= "Hello World!";
1088 // non-owned buffer points to the string passed to it
1089 wxScopedCharBuffer sbuf
= wxScopedCharBuffer::CreateNonOwned(literal
);
1090 CPPUNIT_ASSERT( sbuf
.data() == literal
);
1092 // a copy of scoped non-owned buffer still points to the same string
1093 wxScopedCharBuffer
sbuf2(sbuf
);
1094 CPPUNIT_ASSERT( sbuf
.data() == sbuf2
.data() );
1096 // but assigning it to wxCharBuffer makes a full copy
1097 wxCharBuffer
buf(sbuf
);
1098 CPPUNIT_ASSERT( buf
.data() != literal
);
1099 CPPUNIT_ASSERT_EQUAL( literal
, buf
.data() );
1101 wxCharBuffer buf2
= sbuf
;
1102 CPPUNIT_ASSERT( buf2
.data() != literal
);
1103 CPPUNIT_ASSERT_EQUAL( literal
, buf
.data() );
1105 // Check that extending the buffer keeps it NUL-terminated.
1108 wxCharBuffer
buf3(len
);
1109 CPPUNIT_ASSERT_EQUAL('\0', buf3
.data()[len
]);
1113 CPPUNIT_ASSERT_EQUAL('\0', buf4
.data()[len
]);
1115 wxCharBuffer
buf5(5);
1117 CPPUNIT_ASSERT_EQUAL('\0', buf5
.data()[len
]);